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Two-dimensional and three-dimensional time-lapse microscopic magnetic resonance imaging of Xenopus gastrulation movements using intrinsic tissue-specific contrast.利用内在组织特异性对比对非洲爪蟾原肠胚形成运动进行二维和三维延时显微磁共振成像。
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Magnetic resonance-based morphometry: a window into structural plasticity of the brain.基于磁共振成像的形态测量学:洞察大脑结构可塑性的窗口。
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Plasticity of auditory medullary-midbrain connectivity across metamorphic development in the bullfrog, Rana catesbeiana.牛蛙(Rana catesbeiana)变态发育过程中听觉髓质-中脑连接的可塑性。
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Axons and synaptic boutons are highly dynamic in adult visual cortex.轴突和突触小体在成年视觉皮层中具有高度的动态性。
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3D atlas describing the ontogenic evolution of the primary olfactory projections in the olfactory bulb of Xenopus laevis.描述非洲爪蟾嗅球中初级嗅觉投射个体发生演变的三维图谱。
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Cellular and spatial changes in the anuran superior olive across metamorphosis.变态过程中无尾目动物上橄榄核的细胞和空间变化。
Hear Res. 2005 Sep;207(1-2):87-98. doi: 10.1016/j.heares.2005.04.006.
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Time-lapse in vivo imaging of the morphological development of Xenopus optic tectal interneurons.非洲爪蟾视顶盖中间神经元形态发育的延时活体成像
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Binary morphological shape-based interpolation applied to 3-D tooth reconstruction.应用于三维牙齿重建的基于二元形态形状的插值法。
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牛蛙(北美牛蛙)发育中的神经系统的动态可视化。

Dynamic visualization of the developing nervous system of the bullfrog, Rana catesbeiana.

作者信息

Horowitz Seth S, Simmons Andrea Megela

机构信息

Department of Psychology, Brown University, Providence, RI 02912, USA.

出版信息

Brain Res. 2007 Jul 9;1157:23-31. doi: 10.1016/j.brainres.2007.04.078. Epub 2007 May 6.

DOI:10.1016/j.brainres.2007.04.078
PMID:17550783
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2080828/
Abstract

Anuran amphibians undergo a rapid and dramatic process of metamorphosis featuring widespread structural reorganization of the central nervous system. Although morphological changes during embryonic stages of anuran development have been well documented, much less information is available describing structural changes in the brain during larval (tadpole) stages. Using still images from cresyl-violet-stained material, we present an adaptation of the digital image and video manipulation technique of morphing that allows these images to be compiled in such a manner as to highlight key periods in tadpole brain development in a dynamic fashion. We present three morphed video data sets from ranid tadpoles that facilitate the identification of developmental changes in nuclear boundaries at different levels of the neuraxis. The use of animation allows dynamic examination of anatomical changes across long developmental spans without requiring additional anatomical preparations or specialized expensive equipment.

摘要

无尾两栖动物经历一个快速而显著的变态过程,其特征是中枢神经系统广泛的结构重组。尽管无尾类动物胚胎发育阶段的形态变化已有详细记录,但关于幼体(蝌蚪)阶段大脑结构变化的信息却少得多。利用甲酚紫染色材料的静态图像,我们对变形的数字图像和视频处理技术进行了改进,使这些图像能够以动态方式突出蝌蚪大脑发育的关键时期进行汇编。我们展示了来自蛙科蝌蚪的三个变形视频数据集,这些数据集有助于识别神经轴不同水平上核边界的发育变化。动画的使用使得能够动态检查长时间发育跨度内的解剖变化,而无需额外的解剖准备或专门的昂贵设备。